
07.12.2020Quantity of bottom reinforcement required = 12.5 kg 250 = 3125 kg = 3.125 tonnes of Y12 mm Quantity of top reinforcement required (using 25% of bottom reinforcement) = 0.25 3125 = 781 kg = 0.781
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The detail estimates include Foundation work/ Sub-Structure Constructions 1. Quantities of excavation of footing and foundation walls. 2. Quantity of plain cement concrete below footings and foundation walls. 3. Quantity of concrete of isolated/ tapered footings. 4. Quantity of concrete in columns below the plinth level. 5.
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17.11.2022Amount of Cement Required Cement Volume = C e m e n t R a t i o S u m o f R a t i o W e t V o l u m e o f M i x = 1 5.5 426.72 = 77.59 m 3 No. of Cement Bags = C e m e n t V o l u m e 0.035 = 77.59 0.035 == 2216.86 B a g s Cement in Kg = N o. o f C e m e n t B a g s 50 = 2216.86 50 = 110842.86 k g Note: 1 Bag of cement = 0.035 m3.
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Sl. No. Unit Quantity Rate Amount Remarks Part A 1 cum 158.63 2 cum 325.50 3 sqm 225.00 4 4.1 sqm 0.90 4.2 sqm 51.00 5 rmt 170.00 6 cum 16.20 7 7.1 cum 4. Cement Concrete Pavement (Construction of un-reinforced, dowel jointed, plain cement concrete pavement over a prepared sub base with 43 grade cement 400 kg per cum, coarse and fine
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To find the amount of ready mix concrete for a slab, you can estimate it with a standard volume calculator. Select dimensions of the concrete structure e.g., beam, column, slab, footing, etc. (All dimensions should be expressed either in m or ft) Unit: Length: Width: Height/ Thickness: Concrete Mix: Result window
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We have to deploy adequate manpower to complete a certain activity without any chaos. In this post, we had listed out the approx labour requirement for civil works and also Labour output per day for different works. In the earlier post,
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Cement is equal to 1/7 x 184.8 Cement is equal to 26.4 ft 3 Cement [in bags] is equal to 26.4/1.25 = 21.12 bags 1.25 ft 3 is volume of one cement bag Sand is equal to 2 x 26.4 = 52.8 ft 3 In sacra: 52.8 ft 3 /100 is equal
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05.09.20101:2:4 (cement : sand : stone ballast) by volume when specified. Minimum compressive strength of concrete of 1:2:4 proportion shall be 140 kg/cm2 in 7 days. Hand mixing Mixing shall be done on
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24.09.2020Quantity of cement : quantity of cement= = (1/5.5) X 1.52 = 0.2763m3 cement in bags: volume of 1 cement bag = 0.035m3 Nos of cement bag = 0.2763/0.035 = 7.89 nos of cement bag required for 1m3 concrete
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Rate Analysis For Plain Cement Concrete (P.C.C) Rate Analysis For Reinforcement Concrete (Column Beam And Slab) Rate Analysis For Masonry Work. Rate Analysis For Plaster Work. Rate Analysis For Tile
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PPC Cement 53 Grade: 220 Kg Water Cement ratio (w/c) : 0.6 Free Water: 132 liters 300 mm Metal: 666 kg 20 mm Aggregates: 666 Kg 10 mm Aggregates: 539 Kg Fine Aggregate (Sand):1038 Kg Admixture Dosage :0.6% Admixture: 1.4
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Rate Analysis For Plain Cement Concrete (P.C.C) Rate Analysis For Reinforcement Concrete (Column Beam And Slab) Rate Analysis For Masonry Work. Rate Analysis For Plaster Work. Rate Analysis For Tile Work. Rate Analysis For Paint Work. Material Statement : Material Statement In Excel. Bill Of Quantity (B.O.Q) Bill Of Quantity For A
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25.05.2020Plump (large undressed stone embedded with others in concrete on large work) above 160 mm and upto any reasonable size may be used in plain concrete work upto a maximum limit of 20 percent by volume of concrete.
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07.12.2020Estimate the quantity of floor beam reinforcement required in a moderate duplex if the total length of all the floor beams in the building is 130 m. Solution. Quantity of Y16 mm bars required = 9.5 130 = 1235
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Answer (1 of 4): The quantity of required cement, aggregate and sand is given in below table May this table helps you. Thank you! 🙂 Edit 1: The quantity of cement in table is in bags not in Kg. Sorry for that.
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Grade of concrete Grade of concrete M10, M15, M20, M25 depends on ratio of Cement, Sand and Aggregate. M20 is the most common for Home Builders. Calculate Concrete Volume (Cubic Meter) Area of Slab (Square Meter) Cement (No. of bags) Sand Aggregate (Coarse) Disclaimer: Quantity has been calculated using the average values.
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Specs: #8226; Blade Thickness: 3 mm #8226; Blade Material: 8Cr13MoV Stainless steel #8226; Handle Material: FRN (Fibre Reinforced Nylon) #8226; Blade Length: 81 mm #8226; Closed Length: 105 mm #8226; Overall Length: 185 mm #8226; Weight: 91 g
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Step 1 FIrst, find number of rods required for main reinforcement and distribution Number of Bars Formula = (Length of slab / spacing) + 1 Number of Main Bars = (Ly / spacing) + 1 = (5000/150) + 1 = 34 nos Number of Distribution Bars = (Lx / spacing) + 1 = (2000 / 150) + 1 = 14 nos Step 2 Find cutting length of main bars and distribution bars
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03.08.2018Some of Mix is – 5.5. Where, M = Mix. 20 = Characteristic Compressive strength. Consider volume of concrete = 1m3. Dry Volume of Concrete = 1 x 1.54 = 1.54 m3 (For Dry Volume Multiply By 1.54) Now we start calculation to find Cement, Sand and Aggregate quality in 1 cubic meter of concrete.
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Calculating Water Tank Installation Estimates. We have the following data: RCC water tank is circular. Plain cement concrete = 1:2:4 with thickness = 10 cm. RCC = 1:2:4 with thickness = 10 cm. Opening for water tank is 60
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29.12.2021So quantity of concrete = lxbxh =0.23 x 0.23x 1.375. 0.0727cum. There are total two numbers of c1 columns therefore we multiply the quantity with 2. = 0.0727 x 2. Quantity of concrete in c2 column =0.145cum. Total quantity of concrete in c1 and c2 =1.012+0.145 = 1.157cum. We can also calculate all the quantities in ms excel directly by taking
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IS456 Codebook recommends the following quantities of total aggregate per 50kg of cement to produce nominal mix concrete. Note: General ratio of fine aggregate to coarse aggregate is 1:2. The ratio can be adjusted between
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Quantity of 50 kg Cement Bags = Volume * Cement multiplier for a Class C in 50kg bags = 12.5m3 * 5 = 62.5 bags Quantity of Sand = Volume * Sand multiplier for a Class "C" mix = 12.5m3 * .5 = 6.25m3 Quantity of Gravel = Volume * Gravel multiplier for a Class "C" mix = 12.5mm3 * 1 = 12.5mm3 Is this article useful?
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Residential Building Estimation Excel Sheet In the estimation of residential construction projects following quantities are calculated. Excavation of Work Plain Cement Concrete Column footing Quantity
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26.05.2021BUILDING ESTIMATION| BUILDING ESTIMATION COSTING |ESTIMATE IN EXCEL P.C.C work: Providing and laying plain cement concrete of 1:5:10 (1cement: 5 coarse sand: Cement
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Section IX: Bill of Quantities (BoQ) Page: 78 of 90 3.5 CW0011 Providing and laying in position plain cement concrete excluding the cost of centering and shuttering ‐ All work upto plinth level. 1:5:10 (1 cement: 5 sand: 10 graded crushed stone 40 mm nominal size. Cum 195.03
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Formula, Cement = (Volume of dry concrete/a+b+c) a = (1.54/a+b+c) a = [ (1.54/1+2+4)] 1 = 0.22 cum Now density of cement = 1440 kg/cu.m ∴ Volume of cement = 0.22 1440 =316.8 kg. As we know, 1 bag of cement contains
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29.12.2021So quantity of concrete = lxbxh =0.4 x 0.23x 1.375 0.1265cum There are total eight numbers of c1 columns therefore we multiply the quantity with 8. = 0.1265 x 8 Quantity of concrete in c1 column =1.012cum For c2 column Length= 0.23m Breadth= 0.23m Depth = 1.375m So quantity of concrete = lxbxh =0.23 x 0.23x 1.375 0.0727cum
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Quantity (Nos) Excavation up to 1 Plain Cement Concrete – 1 m 3: Male Coolie: 0.7: coolie: 0.7: Mason: 0.13: Foreman: 0.13: Reinforced Cement Concrete – 1 m 3: Based on the Practical
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Description of item Unit Quantity 1 Dismantling of existing cement concrete pavement M3 789.25 2 Earthwork excavation M3 20209.25 3 Providing and laying in position of P.C.C M3 11.33 4 Supplying HDPE pipes 3M 1584 Table 3.2: Calculated construction and demolition waste quantity by using detailed estimation and percentage waste factor table Sl
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Today, about 100 million cubic metres of fibre reinforced concrete are produced annually: • 60% – slabs on grade • 25% – fibre shotcrete • 5% – precast members • 10% – miscellaneous other applications. However, the lack of truly structural applications should be noted; the reasons for this will be discussed later.
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The quantity of water given below should be applied against 50kg cement bag. Concrete Ratio - Amount of Water 1:3:6 - 34 liters 1:2:4 - 30 liters 1:2:3 - 27 liters 1:1:2 - 25 liters If vibrator is utilized for concrete compaction, then the amount
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Let's compute the cement quantity: 1) In m 3 = part of cement/ratio addition x 1.54 = 1/7 x 1.54 is equal to 0.22 m 3 2) In kg = 1/7 x 1.54 x cement density = 1/7 x 1.54 x 1440 = 316.8 kg 3) In bags = value of kg/one cement bag = 316.8/50 = 6.336 bags 4) In ft 3 = technique A: 0.22 x 35.3147 = 7.76 ft 3
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Diagram representation for section/side view - RCC water tank is circular. Plain cement concrete = 1:2:4 with thickness = 10 cm. RCC = 1:2:4 with thickness = 10 cm. Opening for water tank is 60 cm with thickness = 10
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Rate Analysis For Plain Cement Concrete (P.C.C) Rate Analysis For Reinforcement Concrete (Column Beam And Slab) Rate Analysis For Masonry Work. Rate Analysis For Plaster Work. Rate Analysis For Tile Work. Rate Analysis For Paint Work. Material Statement : Material Statement In Excel. Bill Of Quantity (B.O.Q) Bill Of Quantity For A Project
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17.03.2016PLAIN CEMENT CONCRETE: The cement concrete in which no reinforcement is provided is called plain cement concrete or mass cement concrete. •For different ratio of concrete the amount of water for 50kg of
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05.09.20101:2:4 (cement : sand : stone ballast) by volume when specified. Minimum compressive strength of concrete of 1:2:4 proportion shall be 140 kg/cm2 in 7 days. Hand mixing Mixing shall be done on masonry platform or
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24.09.2020Quantity of cement : quantity of cement= = (1/5.5) X 1.52 = 0.2763m3 cement in bags: volume of 1 cement bag = 0.035m3 Nos of cement bag = 0.2763/0.035 = 7.89 nos of cement bag required for 1m3
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26.05.2021BUILDING ESTIMATION| BUILDING ESTIMATION COSTING |ESTIMATE IN EXCEL P.C.C work: Providing and laying plain cement concrete of 1:5:10 (1cement: 5 coarse sand: Cement Concrete Flooring
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05.04.2020Quantity Estimation of Slab | Cement, Sand and Coarse Aggregates in Slab | Quantity Survey Learn calculating quantity estimation for slab. In this video we w
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